Hohmann S, Bell W, Neves M J, Valckx D, Thevelein J M
Laboratorium voor Moleculaire Celbiologie, Katholieke Universiteit Leuven, Flanders, Belgium.
Mol Microbiol. 1996 Jun;20(5):981-91. doi: 10.1111/j.1365-2958.1996.tb02539.x.
In the yeast Saccharomyces cerevisiae, trehalose-6-phosphate (tre-6-P) synthase encoded by GGS1/TPS1, is not only involved in the production of trehalose but also in restriction of sugar influx into glycolysis in an unknown fashion; it is therefore essential for growth on glucose or fructose. In this work, we have deleted the TPS2 gene encoding tre-6-P phosphatase in a strain which displays very low levels of Ggs1/TPS1, as a result of the presence of the byp 1-3 allele of GGS1/TPS1. The byp 1-3 tps2 delta double mutant showed elevated tre-6-P levels along with improved growth and ethanol production, although the estimated concentrations of glycolytic metabolites indicated excessive sugar influx. In the wild-type strain, the addition of glucose caused a rapid transient increase of tre-6-P. In tps 2 delta mutant cells, which showed a high tre-6-P level before glucose addition, sugar influx into glycolysis appeared to be diminished. Furthermore, we have confirmed that tre-6-P inhibits the hexokinases in vitro. These data are consistent with restriction of sugar influx into glycolysis through inhibition of the hexokinases by tre-6-P during the switch to fermentative metabolism. During logarithmic growth on glucose the tre-6-P level in wild-type cells was lower than that of the byp 1-3 tps2 delta mutant. However, the latter strain arrested growth and ethanol production on glucose after about four generations. Hence, other mechanisms, which also depend on Ggs1/Tps1, appear to control sugar influx during growth on glucose. In addition, we provide evidence that the requirement for Ggs1/Tps1 for sporulation may be unrelated to its involvement in trehalose metabolism or in the system controlling glycolysis.
在酿酒酵母中,由GGS1/TPS1编码的海藻糖-6-磷酸(tre-6-P)合酶不仅参与海藻糖的产生,还以一种未知的方式限制糖进入糖酵解;因此,它对于在葡萄糖或果糖上生长至关重要。在这项工作中,我们在一个由于存在GGS1/TPS1的byp 1-3等位基因而显示出极低水平的Ggs1/TPS1的菌株中删除了编码tre-6-P磷酸酶的TPS2基因。byp 1-3 tps2Δ双突变体显示tre-6-P水平升高,同时生长和乙醇产量得到改善,尽管糖酵解代谢物的估计浓度表明糖流入过多。在野生型菌株中,添加葡萄糖会导致tre-6-P迅速短暂增加。在添加葡萄糖前显示出高tre-6-P水平的tps2Δ突变细胞中,糖进入糖酵解的过程似乎减少了。此外,我们已经证实tre-6-P在体外抑制己糖激酶。这些数据与在向发酵代谢转变过程中tre-6-P通过抑制己糖激酶来限制糖进入糖酵解是一致的。在葡萄糖上对数生长期间,野生型细胞中的tre-6-P水平低于byp 1-3 tps2Δ突变体。然而,后一种菌株在大约四代后停止在葡萄糖上生长和产生乙醇。因此,其他同样依赖于Ggs1/Tps1的机制似乎在葡萄糖生长期间控制糖的流入。此外,我们提供证据表明,孢子形成对Ggs1/Tps1的需求可能与其参与海藻糖代谢或控制糖酵解的系统无关。